Urbanization, Land Use Change, and Land Surface Temperature: A Remote Sensing-Based Assessment for Sustainable City Planning and Development
Kundan Meshram, Chatrabhuj, Vijay P. Singh, Umank MishraAbstract
Increasing urbanization has led to changes in land use and land cover (LULC), which have a direct impact on land surface temperature (LST). There is a need to examine the impact of land use change to understand the relation between land use policy, urbanization, and land surface temperature, which will help in meeting SDG Goal 11 – sustainable cities. Spatial changes of LULC and LST of Bhopal City, M.P., India, over a period of 20 years (2000, 2010, and 2020) were examined using Landsat satellite series 5-TM and 8-OLI. Indices such as the Normalized Difference Vegetation Index (NDVI), Normalized Difference Water Index (NDWI), Normalized Difference Moisture Index (NDMI), Normalized Difference Build-Up Index (NDBI), Normalized Difference Bareness Index (NDBaI), and Soil Adjusted Vegetation Index (SAVI) were used to examine the correlation between LULC categories such as vegetation, built-up area, bare soil, agricultural land, and water bodies and their influence on LST. Results showed that, over time, urbanization had increased, which had led to a rise in urban temperature. Conversely, vegetation and water cover had reduced surface temperature, which indicated the need for water bodies and green areas for a sustainable city. This study showcases informed decision-making in designing land use policies, contributing toward SDG Goal 11 (sustainable cities). By representing the nexus between LST, urbanization, and LULC features, it promotes climate-resilience strategies for uplifting sustainable city planning and promoting long-term livability.